Bamba Takeshi, Fukusaki Ei-Ichiro, Nakazawa Yoshihisa, Kobayashi Akio
Department of Biotechnology, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.
Planta. 2002 Oct;215(6):934-9. doi: 10.1007/s00425-002-0832-3. Epub 2002 Jul 25.
The localization of polyisoprene in young stem tissues of Eucommia ulmoides Oliver was investigated by histochemical staining and Fourier transform infrared (FT-IR) microspectroscopy. The fibrous structures were stained with Oil Red O. FT-IR microspectroscopic analysis proved that the fibrous structures were trans-polyisoprene. Granular structures stained with the dye, and characteristic absorptions at 2,960 cm(-1) and 1,430 cm(-1) in FT-IR suggested that trans-polyisoprene accumulated in the vicinity of the cambium layer. We have thus successfully shown for the first time the localization of trans-polyisoprene in plant tissues, and our histological investigation allowed us to presume the main sites of biosynthesis and accumulation of trans-rubber. Furthermore, a new technical approach, the preparation of sections using an electronic freezing unit and the in situ analysis of polyisoprene using FT-IR microspectroscopy, is demonstrated to be a promising method for determining the accumulation of polyisoprene as well as other metabolites.
通过组织化学染色和傅里叶变换红外(FT-IR)显微光谱法研究了杜仲幼茎组织中聚异戊二烯的定位。纤维结构用苏丹红O染色。FT-IR显微光谱分析证明纤维结构是反式聚异戊二烯。用该染料染色的颗粒结构以及FT-IR中2960 cm(-1)和1430 cm(-1)处的特征吸收表明反式聚异戊二烯积累在形成层附近。因此,我们首次成功地展示了反式聚异戊二烯在植物组织中的定位,并且我们的组织学研究使我们能够推测反式橡胶生物合成和积累的主要部位。此外,一种新的技术方法,即使用电子冷冻装置制备切片并使用FT-IR显微光谱法对聚异戊二烯进行原位分析,被证明是一种用于确定聚异戊二烯以及其他代谢物积累的有前景的方法。